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Updated: Sep 16, 2025

Assessment of Human Natural Killer Cell Events Driven by FcγRIIIa Engagement in the Presence of Therapeutic Antibodies
Published on: May 22, 2020
Linker-dependent modulation of anti-CD22 scFv antibody stability and avidity: Combined structural and experimental
Alice Soares de Queiroz1, Liandra Éllen Coelho Pereira1, Ana Virgínia Frota Guimarães de Aquino2
1Protein Engineering and Health Solutions Group, Oswaldo Cruz Foundation, Fiocruz Ceará, Eusébio, Ceará, CEP 61.773-270, Brazil; Postgraduate Program in Biotechnology of Natural Resources, Federal University of Ceará, Campus do Pici, 825, Fortaleza, Ceará, CEP 60.440-970, Brazil.
Abstract:
Monoclonal antibodies targeting CD22, a B-cell surface antigen overexpressed in hematologic malignancies such as acute lymphoblastic leukemia (ALL), have shown promise for targeted immunotherapy. Single-chain variable fragments (scFvs) offer enhanced modularity for CAR-T platforms, and linker length between VH and VL domains is known to influence their conformation and binding. Here, we systematically compared two anti-CD22 scFvs with short (GGGGS) or long ((GGGGS)₄) linkers. Using molecular dynamics simulations (in aqueous and membrane environments), bio-layer interferometry (BLI), and flow cytometry, we found that membrane proximity influences binding, and the short-linker scFv exhibited higher affinity (Kd = 5.1 nM vs. 42.1 nM), slower dissociation, and greater avidity for CD22. Binding free energy decomposition and RMSD analyses revealed a more stable interface for the short-linker construct, especially near the membrane. SEC analysis showed a modestly higher dimeric fraction for the short-linker scFv, although flow cytometry indicated comparable CD22 binding across monomeric and dimeric forms. These findings support linker engineering as a strategy to optimize scFv performance and inform the rational design of CAR-T receptors with improved therapeutic potential.
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